凝聚态物理
材料科学
自旋电子学
磁化
金属-绝缘体过渡
相变
磁各向异性
双层
无定形固体
铁磁性
磁场
金属
化学
物理
有机化学
冶金
量子力学
生物化学
膜
作者
T. Chung,Salinporn Kittiwatanakul,Apiprach Sittipongpittaya,Yuhan Wang,Md Golam Morshed,Avik W. Ghosh,S. J. Poon
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2023-10-27
卷期号:13 (21): 2848-2848
被引量:3
摘要
The ability to manipulate spins in magnetic materials is essential in designing spintronics devices. One method for magnetic switching is through strain. In VO2 on TiO2 thin films, while VO2 remains rutile across the metal–insulator transition, the in-plane lattice area expands going from a low-temperature insulating phase to a high-temperature conducting phase. In a VO2/TbFeCo bilayer, the expansion of the VO2 lattice area exerts tension on the amorphous TbFeCo layer. Through the strain effect, magnetic properties, including the magnetic anisotropy and magnetization, of TbFeCo can be changed. In this work, the changes in magnetic properties of TbFeCo on VO2/TiO2(011) are demonstrated using anomalous Hall effect measurements. Across the metal–insulator transition, TbFeCo loses perpendicular magnetic anisotropy, and the magnetization in TbFeCo turns from out-of-plane to in-plane. Using atomistic simulations, we confirm these tunable magnetic properties originating from the metal–insulator transition of VO2. This study provides the groundwork for controlling magnetic properties through a phase transition.
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